Howard Hughes Medical Institute, Broad Institute of Harvard and MIT, 7 Cambridge Center, Cambridge, Massachusetts 02142, USA.
J Am Chem Soc. 2009 Apr 22;131(15):5667-74. doi: 10.1021/ja900414s.
The build/couple/pair strategy has yielded small molecules with stereochemical and skeletal diversity by using short reaction sequences. Subsequent screening has shown that these compounds can achieve biological tasks considered challenging if not impossible ('undruggable') for small molecules. We have developed gold(I)-catalyzed cascade reactions of easily prepared propargyl propiolates as a means to achieve effective intermolecular coupling reactions for this strategy. Sequential alkyne activation of propargyl propiolates by a cationic gold(I) catalyst yields an oxocarbenium ion that we previously showed is trapped by C-based nucleophiles at an extrannular site to yield alpha-pyrones. Here, we report O-based nucleophiles react by ring opening to afford a novel polyfunctional product. In addition, by coupling suitable building blocks, we subsequently performed intramolecular pairing reactions that yield diverse and complex skeletons. These pairing reactions include one based on a novel aza-Wittig-6pi-electrocyclization sequence and others based on ring-closing metathesis reactions.
构建/偶联/配对策略通过使用短反应序列生成具有立体化学和骨架多样性的小分子。随后的筛选表明,这些化合物可以完成被认为具有挑战性的生物任务(如果不是不可能的话,就是“不可成药的”),而这对于小分子来说是困难的。我们开发了金(I)催化的易于制备的丙炔丙二酸盐的级联反应,作为实现这种策略的有效分子间偶联反应的方法。阳离子金(I)催化剂对丙炔丙二酸盐的连续炔烃活化生成我们之前表明的被碳基亲核试剂在非环位置捕获的氧杂碳正离子,以生成α-吡喃酮。在这里,我们报告了氧亲核试剂通过开环反应进行反应,得到一种新型多功能产物。此外,通过偶联合适的构建块,我们随后进行了分子内配对反应,得到了多样和复杂的骨架。这些配对反应包括基于新型氮杂-Wittig-6pi-电环化序列的反应和其他基于闭环复分解反应的反应。